Key Laboratory of Microbiological Engineering of Agricultural Environment, Ministry of Agriculture, College of Life Sciences, Nanjing Agricultural University, 210095, Nanjing, Jiangsu Province, China.
J Microbiol Biotechnol. 2009 Nov;19(11):1439-46.
Isocarbophos is a widely used organophosphorus insecticide that has caused environmental pollution in many areas. However, degradation of isocarbophos by pure cultures has not been extensively studied, and the degradation pathway has not been determined. In this paper, a highly effective isocarbophos-degrading strain, scl-2, was isolated from isocarbophos-polluted soil. Strain scl-2 was preliminarily identified as Arthrobacter sp. based on its morphological, physiological, and biochemical properties, as well as 16S rDNA analysis. Strain scl-2 could utilize isocarbophos as its sole source of carbon and phosphorus for growth. One hundred mg/l isocarbophos could be degraded to a nondetectable level in 18 h by scl-2 in cell culture, and isofenphos-methyl, profenofos, and phosmet could also be degraded. During the degradation of isocarbophos, the metabolites isopropyl salicylate, salicylate, and gentisate were detected and identified based on MS/MS analysis and their retention times in HPLC. Transformation of gentisate to pyruvate and fumarate via maleylpyruvate and fumarylpyruvate was detected by assaying for the activities of gentisate 1,2- dioxygenase (GDO) and maleylpyruvate isomerase. Therefore, we have identified the degradation pathway of isocarbophos in Arthrobacter sp. scl-2 for the first time. This study highlights an important potential use of the strain scl-2 for the cleanup of environmental contamination by isocarbophos and presents a mechanism of isocarbophos metabolism.
异稻瘟净是一种广泛使用的有机磷杀虫剂,已在许多地区造成环境污染。然而,纯培养物对异稻瘟净的降解尚未得到广泛研究,其降解途径也尚未确定。本文从异稻瘟净污染土壤中分离到一株高效异稻瘟净降解菌 scl-2。根据其形态、生理、生化特性和 16S rDNA 分析,初步鉴定 scl-2 为节杆菌属。菌株 scl-2 可以利用异稻瘟净作为其生长的唯一碳源和磷源。在细胞培养中,scl-2 可在 18 小时内将 100mg/L 的异稻瘟净降解至无法检测的水平,并且还可以降解异噁草松、丙溴磷和治螟磷。在异稻瘟净降解过程中,根据 MS/MS 分析和 HPLC 中的保留时间,检测并鉴定出异丙基水杨酸、水杨酸和龙胆酸等代谢产物。通过测定龙胆酸 1,2-双加氧酶(GDO)和马来酰丙酮酸异构酶的活性,检测到龙胆酸转化为丙酮酸和富马酸的过程中经过了马来酰丙酮酸和富马酰丙酮酸。因此,我们首次鉴定了节杆菌属 scl-2 中异稻瘟净的降解途径。本研究突出了 scl-2 菌株在异稻瘟净环境污染修复方面的重要潜在用途,并提出了异稻瘟净代谢的机制。